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Rotorcraft Simulations with Coupled Flight Dynamics, Free Wake, and Acoustics

机译:具有耦合的飞行动力学,自由苏醒和声学的旋翼飞机仿真

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This study presents the integration of a flight simulation code (PSUHeloSim), a high fidelity rotor aeromechanics model with free wake (CHARM Rotor Module), and an industry standard noise prediction tool (PSU-WOPWOP) into a comprehensive noise prediction system. The flight simulation uses an autonomous controller to follow a prescribed trajectory for both steady and maneuvering flight conditions. The aeromechanical model calculates blade loads and blade motion that couple to the vehicle flight dynamics with suitable resolution to allow high fidelity acoustics analysis (including prediction of blade-vortex interaction (BVI) noise). The blade loads and motion data is sent to PSU-WOPWOP in a postprocessing step to predict external noise. The coupled analysis is being used to evaluate the influence of flight path on aircraft noise certification metrics like EPNL and SEL for various rotorcraft in work for the FAA. The software was used to analyze the acoustic properties of a blade planform similar to the "Blue Edge" rotor blades developed by DLR and Airbus Helicopters - predicting BVI noise reduction as compared to more conventional blade geometries on the same order as that reported for the "Blue Edge" rotor.
机译:这项研究提出了将飞行模拟代码(PSUHeloSim),具有自由唤醒功能的高保真旋翼航空力学模型(CHARM旋翼模块)和行业标准的噪声预测工具(PSU-WOPWOP)集成到一个综合的噪声预测系统中。飞行模拟使用自主控制器来遵循稳定和机动飞行条件下的规定轨迹。航空力学模型以合适的分辨率计算与飞机飞行动力学耦合的叶片载荷和叶片运动,以进行高保真度的声学分析(包括预测叶片涡旋相互作用(BVI)噪声)。叶片负载和运动数据在后处理步骤中发送到PSU-WOPWOP以预测外部噪声。耦合分析用于评估FAA工作中的各种旋翼飞机的飞行路线对飞机噪声认证指标(如EPNL和SEL)的影响。该软件用于分析类似于DLR和空中客车直升机公司开发的“ Blue Edge”转子叶片的叶片平面形状的声学特性-与“蓝色边缘”转子。

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